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Experiment to obtain optical turbulence information along a 2.33 km free-space laser propagation path from measurements of scintillation and focal spot displacement

机译:通过测量闪烁和焦点位移来获得沿2.33 km自由空间激光传播路径的光学湍流信息的实验

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摘要

Optical turbulence research contributes to improved laser communications, adaptive optics, and long-range imaging systems. This paper presents experimental measurements of scintillation and focal spot displacement to obtain optical turbulence information along a near-horizontal 2.33 km free-space laser propagation path. Calculated values for thernrefractive index structure constant (C_n~2) and Fried parameter (r_0) are compared to scintillometer-based measurements forrnseveral cases in winter and spring. Optical measurements were investigated using two different laser sources for the first and second parts of the experiment. Scintillation index estimates from recorded signal intensities were corrected to account for aperture averaging. As a result, we found that an earlier calculation algorithm based on analysis of log-amplitude intensity variance was the best estimator of optical turbulence parameters over the propagation path considered.
机译:光学湍流研究有助于改善激光通信,自适应光学和远程成像系统。本文介绍了闪烁和焦点位移的实验测量结果,以获取沿近水平2.33 km自由空间激光传播路径的光学湍流信息。将折射率结构常数(C_n〜2)和Fried参数(r_0)的计算值与基于闪烁体的冬季和春季几种情况的测量值进行比较。在实验的第一部分和第二部分中,使用两种不同的激光源对光学测量进行了研究。根据记录的信号强度对闪烁指数的估计值进行了校正,以解决孔径平均问题。结果,我们发现,基于对数振幅强度方差分析的较早计算算法是在所考虑的传播路径上光学湍流参数的最佳估计器。

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